AI Article Synopsis

  • Pulmonary fibrosis (PF) is a lung disease that makes it hard to breathe and can be life-threatening.
  • Scientists discovered that certain mice (Ifngr1Rag2) that lack a key suppressor for immune cells called ILC2 can develop PF on their own.
  • The study shows that these ILC2 cells produce a protein that makes fibroblasts (cells that help with tissue repair) create too much collagen, causing the lungs to become stiff and fibrous.

Article Abstract

Pulmonary fibrosis (PF), a condition characterized by inflammation and collagen deposition in the alveolar interstitium, causes dyspnea and fatal outcomes. Although the bleomycin-induced PF mouse model has improved our understanding of exogenous factor-induced fibrosis, the mechanism governing endogenous factor-induced fibrosis remains unknown. Here, we find that Ifngr1Rag2 mice, which lack the critical suppression factor for group 2 innate lymphoid cells (ILC2), develop PF spontaneously. The onset phase of fibrosis includes ILC2 subpopulations with a high Il1rl1 (IL-33 receptor) expression, and fibrosis does not develop in ILC-deficient or IL-33-deficient mice. Although ILC2s are normally localized near bronchioles and blood vessels, ILC2s are increased in fibrotic areas along with IL-33 positive fibroblasts during fibrosis. Co-culture analysis shows that activated-ILC2s directly induce collagen production from fibroblasts. Furthermore, increased IL1RL1 and decreased IFNGR1 expressions are confirmed in ILC2s from individuals with idiopathic PF, highlighting the applicability of Ifngr1Rag2 mice as a mouse model for fibrosis research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10721793PMC
http://dx.doi.org/10.1038/s41467-023-43336-6DOI Listing

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